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60 results for "boson"
Higgs Boson Discovery at the LHC By C.M. Scoby
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The Standard Model (SM) describes fundamental particles. The Higgs boson is the only SM particle that has not yet been discovered. It part of the mechanism that explains how other particles gain... More > mass. The precise mass value of the Higgs is incalculable. Experiments have been unable to observe it. The Large Hadron Collider at CERN will provide access to a new energy regime that will offer many channels for a potential discovery of the Higgs. The ``Golden mode'' for Higgs discovery features decay to two Z particles, with both Zs decaying to leptonic final states. An attempt is made to explore analyses of Higgs decay kinematics that may be more sensitive to the Higgs signal. Since data does not yet exist, analysis is done with Monte Carlo generated events. The analysis presented here will focus on Higgs decaying to two or more leptons, and will develop a kinematical signature for this production channel for events collected in an integrated luminosity of 1 inverse femtobarn.< Less
Higgs Boson Discovery at the LHC By C.M. Scoby
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The Standard Model (SM) describes fundamental particles. The Higgs boson is the only SM particle that has not yet been discovered. It part of the mechanism that explains how other particles gain... More > mass. The precise mass value of the Higgs is incalculable. Experiments have been unable to observe it. The Large Hadron Collider at CERN will provide access to a new energy regime that will offer many channels for a potential discovery of the Higgs. The ``Golden mode'' for Higgs discovery features decay to two Z particles, with both Zs decaying to leptonic final states. An attempt is made to explore analyses of Higgs decay kinematics that may be more sensitive to the Higgs signal. Since data does not yet exist, analysis is done with Monte Carlo generated events. The analysis presented here will focus on Higgs decaying to two or more leptons, and will develop a kinematical signature for this production channel for events collected in an integrated luminosity of 1 inverse femtobarn.< Less
ATOMOS, BOSONES, FERMIONES, UNIVERSO By SALVATORE AVOLIO
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ÁTOMOS : todos los átomos del Universo serían 1080 BOSONES : son los mediadores de las Fuerzas del Universo (Poderosa, Débil, Electromagnética,... More > Gravedad). FERMIONES: son la materia del Universo; se distinguen en bosones y leptones. UNIVERSO: está constituido por: energía oscura 68.3, materia oscura 26.8, materia ordinaria 4.9. Átomos, bosones, fermiones, todo el Universo, están hechos de ENERGÍA. ¿Qué cosa es la ENERGÍA?< Less
Quark Matter Card Game - Find Your Own Higgs Boson By Csaba Török, Judit Csörgő, Tamás Csörgő
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Quarks and leptons, such as electrons, muons and neutrinos... Sounds a bit scary, doesn't it? With the help of this booklet, you can get into touch with the incomprehensible world of elementary... More > particles. This is not just a usual booklet: it contains a set of 66 cards, and describes six games with them. The cards represent elementary particles from the Standard Model. You can play family style memory games with particles and their anti-particles, have fun with Quark Matter, the perfect fluid of quarks. You can even find your own Higgs boson and win one of the games on the spot. It is fun to have elementary particles in your hands, or, in your pocket! The games scale very well, recommended from 5 years old to adults.< Less
Higgs Boson Discovered In Superconductors: The Koyal Group Info Mag By Richard Banks
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A team of physicists from India, Israel, Germany and US reportedly detected the Higgs boson, which is believed to be the thing responsible for every mass in the universe, for the first time in... More > superconductors. What's more, these newly-detected Higgs boson using superconductors is more stable and way cheaper to achieve. Scientists will now have an easier way to observe the Higgs boson even in ordinary laboratories.< Less
Low-Data Investigation of Higgs Boson Discovery at the LHC By C.M. Scoby
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The Standard Model (SM) describes fundamental particles. The Higgs boson is the only SM particle that has not yet been discovered. It part of the mechanism that explains how other particles gain... More > mass. The precise mass value of the Higgs is incalculable. Experiments have been unable to observe it. The Large Hadron Collider at CERN will provide access to a new energy regime that will offer many channels for a potential discovery of the Higgs. The ``Golden mode'' for Higgs discovery features decay to two Z particles, with both Zs decaying to leptonic final states. An attempt is made to explore analyses of Higgs decay kinematics that may be more sensitive to the Higgs signal. Since data does not yet exist, analysis is done with Monte Carlo generated events. The analysis presented here will focus on Higgs decaying to two or more leptons, and will develop a kinematical signature for this production channel for events collected in an integrated luminosity of 1 inverse femtobarn.< Less
Low-Data Investigation of Higgs Boson Discovery at the LHC By C.M. Scoby
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The Standard Model (SM) describes fundamental particles. The Higgs boson is the only SM particle that has not yet been discovered. It part of the mechanism that explains how other particles gain... More > mass. The precise mass value of the Higgs is incalculable. Experiments have been unable to observe it. The Large Hadron Collider at CERN will provide access to a new energy regime that will offer many channels for a potential discovery of the Higgs. The ``Golden mode'' for Higgs discovery features decay to two Z particles, with both Zs decaying to leptonic final states. An attempt is made to explore analyses of Higgs decay kinematics that may be more sensitive to the Higgs signal. Since data does not yet exist, analysis is done with Monte Carlo generated events. The analysis presented here will focus on Higgs decaying to two or more leptons, and will develop a kinematical signature for this production channel for events collected in an integrated luminosity of 1 inverse femtobarn.< Less
Low-Data Investigation of Higgs Boson Discovery at the LHC By C.M. Scoby
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The Standard Model (SM) describes fundamental particles. The Higgs boson is the only SM particle that has not yet been discovered. It part of the mechanism that explains how other particles gain... More > mass. The precise mass value of the Higgs is incalculable. Experiments have been unable to observe it. The Large Hadron Collider at CERN will provide access to a new energy regime that will offer many channels for a potential discovery of the Higgs. The ``Golden mode'' for Higgs discovery features decay to two Z particles, with both Zs decaying to leptonic final states. An attempt is made to explore analyses of Higgs decay kinematics that may be more sensitive to the Higgs signal. Since data does not yet exist, analysis is done with Monte Carlo generated events. The analysis presented here will focus on Higgs decaying to two or more leptons, and will develop a kinematical signature for this production channel for events collected in an integrated luminosity of 1 inverse femtobarn.< Less
Low-Data Investigation of Higgs Boson Discovery at the LHC By C.M. Scoby
eBook (PDF): $0.00
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The Standard Model (SM) describes fundamental particles. The Higgs boson is the only SM particle that has not yet been discovered. It part of the mechanism that explains how other particles gain... More > mass. The precise mass value of the Higgs is incalculable. Experiments have been unable to observe it. The Large Hadron Collider at CERN will provide access to a new energy regime that will offer many channels for a potential discovery of the Higgs. The ``Golden mode'' for Higgs discovery features decay to two Z particles, with both Zs decaying to leptonic final states. An attempt is made to explore analyses of Higgs decay kinematics that may be more sensitive to the Higgs signal. Since data does not yet exist, analysis is done with Monte Carlo generated events. The analysis presented here will focus on Higgs decaying to two or more leptons, and will develop a kinematical signature for this production channel for events collected in an integrated luminosity of 1 inverse femtobarn.< Less
A Search for Z’ Gauge Bosons Decaying to Tau-Antitau Pairs in Proton-Proton Collisions with the ATLAS Detector By Andrew Leister
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This dissertation was presented to the Yale Graduate School of Arts and Sciences in fulfillment of the requirements for the degree of Doctor of Philosophy.